Digital Electronics, Logic gates and Digital Circuit
Semiconductor Electronics Material Devices and Simple Circuits

151288 For which one of the following input combinations, the given logic circuit gives the output \(\mathrm{Y}=1\) ?
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
5 \(\mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151289 The waveforms \(A\) and \(B\) given below are given as input to NAND gate. then, its logic output \(y\) is
original image

1 for \(t_1\) to \(t_2 ; y=0\)
2 for \(t_2\) to \(t_3 ; y=1\)
3 for \(t_3\) to \(t_4 ; y=1\)
4 for \(t_4\) to \(t_5 ; y=0\)
5 for \(t_5\) to \(t_6 ; y=0\)
Semiconductor Electronics Material Devices and Simple Circuits

151291 The truth table for the following logic circuit is
original image

1 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
2 \(\left|\begin{array}{lll}A B Y \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 1\end{array}\right|\)
3 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 0 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
4 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 1 \\ 1 0 0 \\ 1 1 1\end{array}\right|\)
5 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 1 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
Semiconductor Electronics Material Devices and Simple Circuits

151293 The real time variation of input signals \(A\) and \(B\) are as shown below. If the inputs are fed into NAND gate, then select the output signal from the following
original image

1 original image
2 original image
3 original image
4 original image
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Semiconductor Electronics Material Devices and Simple Circuits

151288 For which one of the following input combinations, the given logic circuit gives the output \(\mathrm{Y}=1\) ?
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
5 \(\mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151289 The waveforms \(A\) and \(B\) given below are given as input to NAND gate. then, its logic output \(y\) is
original image

1 for \(t_1\) to \(t_2 ; y=0\)
2 for \(t_2\) to \(t_3 ; y=1\)
3 for \(t_3\) to \(t_4 ; y=1\)
4 for \(t_4\) to \(t_5 ; y=0\)
5 for \(t_5\) to \(t_6 ; y=0\)
Semiconductor Electronics Material Devices and Simple Circuits

151291 The truth table for the following logic circuit is
original image

1 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
2 \(\left|\begin{array}{lll}A B Y \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 1\end{array}\right|\)
3 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 0 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
4 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 1 \\ 1 0 0 \\ 1 1 1\end{array}\right|\)
5 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 1 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
Semiconductor Electronics Material Devices and Simple Circuits

151293 The real time variation of input signals \(A\) and \(B\) are as shown below. If the inputs are fed into NAND gate, then select the output signal from the following
original image

1 original image
2 original image
3 original image
4 original image
Semiconductor Electronics Material Devices and Simple Circuits

151288 For which one of the following input combinations, the given logic circuit gives the output \(\mathrm{Y}=1\) ?
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
5 \(\mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151289 The waveforms \(A\) and \(B\) given below are given as input to NAND gate. then, its logic output \(y\) is
original image

1 for \(t_1\) to \(t_2 ; y=0\)
2 for \(t_2\) to \(t_3 ; y=1\)
3 for \(t_3\) to \(t_4 ; y=1\)
4 for \(t_4\) to \(t_5 ; y=0\)
5 for \(t_5\) to \(t_6 ; y=0\)
Semiconductor Electronics Material Devices and Simple Circuits

151291 The truth table for the following logic circuit is
original image

1 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
2 \(\left|\begin{array}{lll}A B Y \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 1\end{array}\right|\)
3 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 0 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
4 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 1 \\ 1 0 0 \\ 1 1 1\end{array}\right|\)
5 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 1 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
Semiconductor Electronics Material Devices and Simple Circuits

151293 The real time variation of input signals \(A\) and \(B\) are as shown below. If the inputs are fed into NAND gate, then select the output signal from the following
original image

1 original image
2 original image
3 original image
4 original image
Semiconductor Electronics Material Devices and Simple Circuits

151288 For which one of the following input combinations, the given logic circuit gives the output \(\mathrm{Y}=1\) ?
original image

1 \(\mathrm{A}=0, \mathrm{~B}=0, \mathrm{C}=0\)
2 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=0\)
3 \(\mathrm{A}=0, \mathrm{~B}=1, \mathrm{C}=1\)
4 \(\mathrm{A}=1, \mathrm{~B}=1, \mathrm{C}=1\)
5 \(\mathrm{A}=1, \mathrm{~B}=0, \mathrm{C}=1\)
Semiconductor Electronics Material Devices and Simple Circuits

151289 The waveforms \(A\) and \(B\) given below are given as input to NAND gate. then, its logic output \(y\) is
original image

1 for \(t_1\) to \(t_2 ; y=0\)
2 for \(t_2\) to \(t_3 ; y=1\)
3 for \(t_3\) to \(t_4 ; y=1\)
4 for \(t_4\) to \(t_5 ; y=0\)
5 for \(t_5\) to \(t_6 ; y=0\)
Semiconductor Electronics Material Devices and Simple Circuits

151291 The truth table for the following logic circuit is
original image

1 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
2 \(\left|\begin{array}{lll}A B Y \\ 0 0 0 \\ 0 1 1 \\ 1 0 1 \\ 1 1 1\end{array}\right|\)
3 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 0 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
4 \(\left|\begin{array}{lll}A B Y \\ 0 0 1 \\ 0 1 1 \\ 1 0 0 \\ 1 1 1\end{array}\right|\)
5 \(\left|\begin{array}{lll}\mathrm{A} \mathrm{B} \mathrm{Y} \\ 0 0 1 \\ 0 1 1 \\ 1 0 1 \\ 1 1 0\end{array}\right|\)
Semiconductor Electronics Material Devices and Simple Circuits

151293 The real time variation of input signals \(A\) and \(B\) are as shown below. If the inputs are fed into NAND gate, then select the output signal from the following
original image

1 original image
2 original image
3 original image
4 original image